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Effect of samarium nanoparticles on the electrical transport properties of polyaniline - IOPscience

机译:nanoparticles纳米颗粒对聚苯胺电输运性能的影响-IOPscience

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A comprehensive study of the effect of samarium nanoparticles on electrical transport properties of polyaniline has been reported. Samples are prepared by chemical oxidative polymerization of aniline in the presence of samarium nanoparticles and characterized by XRD, FESEM, EDS, HRTEM and UV-Vis spectrometer. When the samarium content in polyaniline matrix increases, energy band gap decreases and conductivity increases by four orders of magnitude. A transformation of negative to positive magnetoconductivity has been observed by incorporating samarium nanoparticles in polyaniline matrix. Two types of activation behavior have been observed from the dielectric relaxation behavior. AC conductivity strongly depends on magnetic field. Although, at present, no theoretical model is found in literature to explain directly the behavior of ac conductivity in the presence of magnetic field, it may be due to the change of grain and interfacial boundary resistances by magnetic field.
机译:reported纳米粒子对聚苯胺电传输性能影响的综合研究已有报道。在sa纳米颗粒存在下,通过苯胺的化学氧化聚合制备样品,并通过XRD,FESEM,EDS,HRTEM和UV-Vis光谱仪进行表征。当聚苯胺基质中the含量增加时,能带隙减小,电导率增加四个数量级。通过在聚苯胺基质中掺入sa纳米颗粒,可以观察到从负到正的导磁率的转变。从介电弛豫行为已经观察到两种类型的激活行为。交流电导率在很大程度上取决于磁场。尽管目前在文献中没有找到直接解释交流电导率在磁场存在下的行为的理论模型,但这可能是由于磁场改变了晶粒和界面电阻的缘故。

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